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Featured researches published by Shunfu Piao.


PLOS ONE | 2008

Direct Inhibition of GSK3β by the Phosphorylated Cytoplasmic Domain of LRP6 in Wnt/β-Catenin Signaling

Shunfu Piao; Sun Hye Lee; Hyunjoon Kim; Soohwan Yum; Jennifer L. Stamos; Yongbin Xu; Su-Jin Lee; Jaewon Lee; Sangtaek Oh; Jin-Kwan Han; Bum-Joon Park; William I. Weis; Nam-Chul Ha

Wnt/β-catenin signaling plays a central role in development and is also involved in a diverse array of diseases. Binding of Wnts to the coreceptors Frizzled and LRP6/5 leads to phosphorylation of PPPSPxS motifs in the LRP6/5 intracellular region and the inhibition of GSK3β bound to the scaffold protein Axin. However, it remains unknown how GSK3β is specifically inhibited upon Wnt stimulation. Here, we show that overexpression of the intracellular region of LRP6 containing a Ser/Thr rich cluster and a PPPSPxS motif impairs the activity of GSK3β in cells. Synthetic peptides containing the PPPSPxS motif strongly inhibit GSK3β in vitro only when they are phosphorylated. Microinjection of these peptides into Xenopus embryos confirms that the phosphorylated PPPSPxS motif potentiates Wnt-induced second body axis formation. In addition, we show that the Ser/Thr rich cluster of LRP6 plays an important role in LRP6 binding to GSK3β. These observations demonstrate that phosphorylated LRP6/5 both recruits and directly inhibits GSK3β using two distinct portions of its cytoplasmic sequence, and suggest a novel mechanism of activation in this signaling pathway.


The EMBO Journal | 2005

Crystal structure of a clip‐domain serine protease and functional roles of the clip domains

Shunfu Piao; Young-Lan Song; Jung Hyun Kim; Sam-Yong Park; Ji Won Park; Bok L. Lee; Byung-Ha Oh; Nam-Chul Ha

Clip‐domain serine proteases (SPs) are the essential components of extracellular signaling cascades in various biological processes, especially in embryonic development and the innate immune responses of invertebrates. They consist of a chymotrypsin‐like SP domain and one or two clip domains at the N‐terminus. Prophenoloxidase‐activating factor (PPAF)‐II, which belongs to the noncatalytic clip‐domain SP family, is indispensable for the generation of the active phenoloxidase leading to melanization, a major defense mechanism of insects. Here, the crystal structure of PPAF‐II reveals that the clip domain adopts a novel fold containing a central cleft, which is distinct from the structures of defensins with a similar arrangement of cysteine residues. Ensuing studies demonstrated that PPAF‐II forms a homo‐oligomer upon cleavage by the upstream protease and that the clip domain of PPAF‐II functions as a module for binding phenoloxidase through the central cleft, while the clip domain of a catalytically active easter‐type SP plays an essential role in the rapid activation of its protease domain.


Journal of Molecular Biology | 2009

Crystal Structure of the Periplasmic Component of a Tripartite Macrolide-Specific Efflux Pump

Soohwan Yum; Yongbin Xu; Shunfu Piao; Se-Hoon Sim; Hong-Man Kim; Wol-Soon Jo; Kyung-Jin Kim; Hee-Seok Kweon; Min-Ho Jeong; Hyesung Jeon; Kangseok Lee; Nam-Chul Ha

In Gram-negative bacteria, type I protein secretion systems and tripartite drug efflux pumps have a periplasmic membrane fusion protein (MFP) as an essential component. MFPs bridge the outer membrane factor and an inner membrane transporter, although the oligomeric state of MFPs remains unclear. The most characterized MFP AcrA connects the outer membrane factor TolC and the resistance-nodulation-division-type efflux transporter AcrB, which is a major multidrug efflux pump in Escherichia coli. MacA is the periplasmic MFP in the MacAB-TolC pump, where MacB was characterized as a macrolide-specific ATP-binding-cassette-type efflux transporter. Here, we report the crystal structure of E. coli MacA and the experimentally phased map of Actinobacillus actinomycetemcomitans MacA, which reveal a domain orientation of MacA different from that of AcrA. Notably, a hexameric assembly of MacA was found in both crystals, exhibiting a funnel-like structure with a central channel and a conical mouth. The hexameric MacA assembly was further confirmed by electron microscopy and functional studies in vitro and in vivo. The hexameric structure of MacA provides insight into the oligomeric state in the functional complex of the drug efflux pump and type I secretion system.


Journal of Biological Chemistry | 2006

A synthetic peptidoglycan fragment as a competitive inhibitor of the melanization cascade

Ji Won Park; Byung-Rok Je; Shunfu Piao; Seiichi Inamura; Yukari Fujimoto; Koichi Fukase; Shoichi Kusumoto; Kenneth Söderhäll; Nam-Chul Ha; Bok Luel Lee

Melanin synthesis is essential for defense and development but must be tightly controlled because systemic hyperactivation of the prophenoloxidase and excessive melanin synthesis are deleterious to the hosts. The melanization cascade of the arthropods can be activated by bacterial lysine-peptidoglycan (PGN), diaminopimelic acid (DAP)-PGN, or fungal β-1,3-glucan. The molecular mechanism of how DAP- or Lys-PGN induces melanin synthesis and which molecules are involved in distinguishing these PGNs are not known. The identification of PGN derivatives that can work as inhibitors of the melanization cascade and the characterization of PGN recognition molecules will provide important information to clarify how the melanization is regulated and controlled. Here, we report that a novel synthetic Lys-PGN fragment ((GlcNAc-MurNAc-l-Ala-d-isoGln-l-Lys-d-Ala)2, T-4P2) functions as a competitive inhibitor of the natural PGN-induced melanization reaction. By using a T-4P2-coupled column, we purified the Tenebrio molitor PGN recognition protein (Tm-PGRP) without causing activation of the prophenoloxidase. The purified Tm-PGRP recognized both Lys- and DAP-PGN. In vitro reconstitution experiments showed that Tm-PGRP functions as a common recognition molecule of Lys- and DAP-PGN-dependent melanization cascades.


Journal of Bacteriology | 2010

Functional Relationships between the AcrA Hairpin Tip Region and the TolC Aperture Tip Region for the Formation of the Bacterial Tripartite Efflux Pump AcrAB-TolC

Hong-Man Kim; Yongbin Xu; Minho Lee; Shunfu Piao; Se-Hoon Sim; Nam-Chul Ha; Kangseok Lee

Tripartite efflux pumps found in Gram-negative bacteria are involved in antibiotic resistance and toxic-protein secretion. In this study, we show, using site-directed mutational analyses, that the conserved residues located in the tip region of the alpha-hairpin of the membrane fusion protein (MFP) AcrA play an essential role in the action of the tripartite efflux pump AcrAB-TolC. In addition, we provide in vivo functional data showing that both the length and the amino acid sequence of the alpha-hairpin of AcrA can be flexible for the formation of a functional AcrAB-TolC pump. Genetic-complementation experiments further indicated functional interrelationships between the AcrA hairpin tip region and the TolC aperture tip region. Our findings may offer a molecular basis for understanding the multidrug resistance of pathogenic bacteria.


Journal of Biological Chemistry | 2011

Functional Implications of an Intermeshing Cogwheel-Like Interaction between TolC and MacA in the Action of Macrolide-Specific Efflux Pump MacAB-TolC

Yongbin Xu; Saemee Song; Arne Moeller; Nahee Kim; Shunfu Piao; Se Hoon Sim; Mooseok Kang; Wookyung Yu; Hyun Soo Cho; Iksoo Chang; Kangseok Lee; Nam Chul Ha

Macrolide-specific efflux pump MacAB-TolC has been identified in diverse Gram-negative bacteria including Escherichia coli. The inner membrane transporter MacB requires the outer membrane factor TolC and the periplasmic adaptor protein MacA to form a functional tripartite complex. In this study, we used a chimeric protein containing the tip region of the TolC α-barrel to investigate the role of the TolC α-barrel tip region with regard to its interaction with MacA. The chimeric protein formed a stable complex with MacA, and the complex formation was abolished by substitution at the functionally essential residues located at the MacA α-helical tip region. Electron microscopic study delineated that this complex was made by tip-to-tip interaction between the tip regions of the α-barrels of TolC and MacA, which correlated well with the TolC and MacA complex calculated by molecular dynamics. Taken together, our results demonstrate that the MacA hexamer interacts with TolC in a tip-to-tip manner, and implies the manner by which MacA induces opening of the TolC channel.


Neurobiology of Disease | 2011

Morin attenuates tau hyperphosphorylation by inhibiting GSK3β

Eun Ji Gong; Hee Ra Park; Mi Eun Kim; Shunfu Piao; Eunjin Lee; Dong Gyu Jo; Hae Young Chung; Nam Chul Ha; Mark P. Mattson; Jaewon Lee

Alzheimers disease (AD) is the major form of age-related dementia and is characterized by progressive cognitive impairment, the accumulation of extracellular amyloid β-peptide (Aβ), and intracellular hyperphosphorylated tau aggregates in affected brain regions. Tau hyperphosphorylation and accumulation in neurofibrillary tangles is strongly correlated with cognitive deficits, and is apparently a critical event in the dementia process because mutations in tau can cause a tangle-only form of dementia called frontotemporal lobe dementia. Among kinases that phosphorylate tau, glycogen synthase kinase 3β (GSK3β) is strongly implicated in AD pathogenesis. In the present study, we established an ELISA to screen for agents that inhibit GSK3β activity and found that the flavonoid morin effectively inhibited GSK3β activity and blocked GSK3β-induced tau phosphorylation in vitro. In addition, morin attenuated Aβ-induced tau phosphorylation and protected human neuroblastoma cells against Aβ cytotoxicity. Furthermore, treatment of 3xTg-AD mice with morin resulted in reductions in tau hyperphosphorylation and paired helical filament-like immunoreactivity in hippocampal neurons. Morin is a novel inhibitor of GSK3β that can reduce tau pathology in vivo and may have potential as a therapeutic agent in tauopathies.


Biochemical and Biophysical Research Communications | 2010

The tip region of the MacA α-hairpin is important for the binding to TolC to the Escherichia coli MacAB-TolC pump

Yongbin Xu; Se-Hoon Sim; Saemee Song; Shunfu Piao; Hong-Man Kim; Xiao Ling Jin; Kangseok Lee; Nam-Chul Ha

The tripartite efflux pump MacAB-TolC found in gram-negative bacteria is involved in resistance to antibiotics. We previously reported the funnel-like hexameric structure of the adaptor protein MacA to be physiologically relevant. In this study, we investigated the role of the tip region of its alpha-hairpin, which forms a cogwheel structure in the funnel-like shape of the MacA hexamer. Mutational and biochemical analyses revealed that the conserved residues located at the tip region of the alpha-hairpin of MacA play an essential role in the binding of TolC. Our findings offer a molecular basis for understanding the drug resistance of pathogenic bacteria.


Journal of Biological Chemistry | 2011

Structural and Functional Characterization of a Highly Specific Serpin in the Insect Innate Immunity

Sun Hee Park; Rui Jiang; Shunfu Piao; Bing Zhang; Eun-Hye Kim; Hyun-Mi Kwon; Xiao Ling Jin; Bok Luel Lee; Nam-Chul Ha

The Toll signaling pathway, an essential innate immune response in invertebrates, is mediated via the serine protease cascade. Once activated, the serine proteases are irreversibly inactivated by serine protease inhibitors (serpins). Recently, we identified three serpin-serine protease pairs that are directly involved in the regulation of Toll signaling cascade in a large beetle, Tenebrio molitor. Of these, the serpin SPN48 was cleaved by its target serine protease, Spätzle-processing enzyme, at a noncanonical P1 residue of the serpins reactive center loop. To address this unique cleavage, we report the crystal structure of SPN48, revealing that SPN48 exhibits a native conformation of human antithrombin, where the reactive center loop is partially inserted into the center of the largest β-sheet of SPN48. The crystal structure also shows that SPN48 has a putative heparin-binding site that is distinct from those of the mammalian serpins. Ensuing biochemical studies demonstrate that heparin accelerates the inhibition of Spätzle-processing enzyme by a proximity effect in targeting the SPN48. Our finding provides the molecular mechanism of how serpins tightly regulate innate immune responses in invertebrates.


Journal of Biological Chemistry | 2007

Crystal Structure of the Serine Protease Domain of Prophenoloxidase Activating Factor-I

Shunfu Piao; Seulki Kim; Jung Hyun Kim; Ji Won Park; Bok L. Lee; Nam-Chul Ha

A family of serine proteases (SPs) mediates the proteolytic cascades of embryonic development and immune response in invertebrates. These proteases, called easter-type SPs, consist of clip and chymotrypsin-like SP domains. The SP domain of easter-type proteases differs from those of typical SPs in its primary structure. Herein, we report the first crystal structure of the SP domain of easter-type proteases, presented as that of prophenoloxidase activating factor (PPAF)-I in zymogen form. This structure reveals several important structural features including a bound calcium ion, an additional loop with a unique disulfide linkage, a canyon-like deep active site, and an exposed activation loop. We subsequently show the role of the bound calcium and the proteolytic susceptibility of the activation loop, which occurs in a clip domain-independent manner. Based on biochemical study in the presence of heparin, we suggest that PPAF-III, highly homologous to PPAF-I, contains a surface patch that is responsible for enhancing the catalytic activity through interaction with a nonsubstrate region of a target protein. These results provide insights into an activation mechanism of easter-type proteases in proteolytic cascades, in comparison with the well studied blood coagulation enzymes in mammals.

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Nam-Chul Ha

Pusan National University

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Yongbin Xu

Pusan National University

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Jaewon Lee

Pusan National University

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Ji Won Park

Pusan National University

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Nam Chul Ha

Pusan National University

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Bo-Young Yun

Pusan National University

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Bok L. Lee

Pusan National University

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